Department of Molecular Genetics, University of Mainz, 55128 Mainz, Germany.
Plant Mol Biol. 2013 Feb;81(3):211-20. doi: 10.1007/s11103-012-9992-0. Epub 2013 Jan 10.
The columnar phenotype of apple trees (Malus x domestica) is characterized by a compact growth habit with fruit spurs instead of lateral branches. These properties provide significant economic advantages by enabling high density plantings. The columnar growth results from the presence of a dominant allele of the gene Columnar (Co) located on chromosome 10 which can appear in a heterozygous (Co/co) or homozygous (Co/Co) state. Although two deep sequencing approaches could shed some light on the transcriptome of columnar shoot apical meristems (SAMs), the molecular mechanisms of columnar growth are not yet elaborated. Since the influence of phytohormones is believed to have a pivotal role in the establishment of the phenotype, we performed RNA-Seq experiments to study genes associated with hormone homeostasis and clearly affected by the presence of Co. Our results provide a molecular explanation for earlier findings on the hormonal state of columnar apple trees. Additionally, they allow hypotheses on how the columnar phenotype might develop. Furthermore, we show a statistically approved enrichment of differentially regulated genes on chromosome 10 in the course of validating RNA-Seq results using additional gene expression studies.
苹果树(Malus x domestica)的柱状表型的特征是紧凑的生长习性,具有果枝而不是侧枝。这些特性通过实现高密度种植提供了显著的经济优势。柱状生长是由位于 10 号染色体上的基因 Columnar(Co)的显性等位基因引起的,该基因可以表现为杂合子(Co/co)或纯合子(Co/Co)状态。尽管两种深度测序方法可以揭示柱状梢分生组织(SAM)的转录组,但柱状生长的分子机制尚未详细阐述。由于植物激素的影响被认为在表型的建立中起着关键作用,我们进行了 RNA-Seq 实验,以研究与激素稳态相关的基因,这些基因显然受到 Co 的影响。我们的结果为之前关于柱状苹果树激素状态的发现提供了分子解释。此外,它们还可以假设柱状表型可能如何发展。此外,我们在使用额外的基因表达研究验证 RNA-Seq 结果的过程中,展示了在 10 号染色体上差异调节基因的统计学上被批准的富集。